Chu Xin-Ling, Dong Wei-Xia, Ding Jin-Li, Feng Ming-Guang, Ying Sheng-Hua
Institute of Microbiology, College of Life Sciences, Zhejiang University, Hangzhou, 310058, China.
Curr Genet. 2018 Feb;64(1):275-284. doi: 10.1007/s00294-017-0741-4. Epub 2017 Sep 4.
Oxidation tolerance is an important determinant to predict the virulence and biocontrol potential of Beauveria bassiana, a well-known entomopathogenic fungus. As a transcriptional coactivator, multiprotein bridging factor 1 mediates the activity of transcription factor in diverse physiological processes, and its homolog in B. bassiana (BbMBF1) contributes to fungal oxidation tolerance. In this study, the BbMBF1-interactomes under oxidative stress and normal growth condition were deciphered by mass spectrometry integrated with the immunoprecipitation. BbMBF1p factor has a broad interaction with proteins that are involved in various cellular processes, and this interaction is dynamically regulated by oxidative stress. Importantly, a B. bassiana homolog of yeast AP-1-like transcription factor (BbAP-1) was specifically associated with the BbMBF1-interactome under oxidation and significantly contributed to fungal oxidation tolerance. In addition, qPCR analysis revealed that several antioxidant genes are jointly controlled by BbAP-1 and BbMBF1. Conclusively, it is proposed that BbMBF1p protein mediates BbAP-1p factor to transcribe the downstream antioxidant genes in B. bassiana under oxidative stress. This study demonstrates for the first time a proteomic view of the MBF1-interactome in fungi, and presents an initial framework to probe the transcriptional mechanism involved in fungal response to oxidation, which will provide a new strategy to improve the biocontrol efficacy of B. bassiana.
氧化耐受性是预测球孢白僵菌(一种著名的昆虫病原真菌)毒力和生物防治潜力的重要决定因素。作为一种转录共激活因子,多蛋白桥接因子1在多种生理过程中介导转录因子的活性,其在球孢白僵菌中的同源物(BbMBF1)有助于真菌的氧化耐受性。在本研究中,通过与免疫沉淀相结合的质谱法解析了氧化应激和正常生长条件下的BbMBF1相互作用组。BbMBF1p因子与参与各种细胞过程的蛋白质具有广泛的相互作用,并且这种相互作用受氧化应激动态调节。重要的是,酵母AP - 1样转录因子在球孢白僵菌中的同源物(BbAP - 1)在氧化条件下与BbMBF1相互作用组特异性相关,并对真菌的氧化耐受性有显著贡献。此外,qPCR分析表明,几个抗氧化基因由BbAP - 1和BbMBF1共同控制。总之,提出BbMBF1p蛋白在氧化应激下介导BbAP - 1p因子转录球孢白僵菌下游的抗氧化基因。本研究首次展示了真菌中MBF1相互作用组的蛋白质组学观点,并提出了一个初步框架来探究真菌对氧化反应所涉及的转录机制,这将为提高球孢白僵菌的生物防治效果提供新策略。